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Progressing super-enhancer landscape during mammary differentiation controls tissue-specific gene regulation

The mammary luminal lineage relies on the common cytokine-sensing transcription factor STAT5 to establish super-enhancers during pregnancy and initiate a genetic program that activates milk production. As pups grow, the greatly increasing demand for milk requires progressive differentiation of mamma...

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Detalles Bibliográficos
Autores principales: Lee, Hye Kyung, Willi, Michaela, Shin, Ha Youn, Liu, Chengyu, Hennighausen, Lothar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6237736/
https://www.ncbi.nlm.nih.gov/pubmed/30285185
http://dx.doi.org/10.1093/nar/gky891
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author Lee, Hye Kyung
Willi, Michaela
Shin, Ha Youn
Liu, Chengyu
Hennighausen, Lothar
author_facet Lee, Hye Kyung
Willi, Michaela
Shin, Ha Youn
Liu, Chengyu
Hennighausen, Lothar
author_sort Lee, Hye Kyung
collection PubMed
description The mammary luminal lineage relies on the common cytokine-sensing transcription factor STAT5 to establish super-enhancers during pregnancy and initiate a genetic program that activates milk production. As pups grow, the greatly increasing demand for milk requires progressive differentiation of mammary cells with advancing lactation. Here we investigate how persistent hormonal exposure during lactation shapes an evolving enhancer landscape and impacts the biology of mammary cells. Employing ChIP-seq, we uncover a changing transcription factor occupancy at mammary enhancers, suggesting that their activities evolve with advancing differentiation. Using mouse genetics, we demonstrate that the functions of individual enhancers within the Wap super-enhancer evolve as lactation progresses. Most profoundly, a seed enhancer, which is mandatory for the activation of the Wap super-enhancer during pregnancy, is not required during lactation, suggesting compensatory flexibility. Combinatorial deletions of structurally equivalent constituent enhancers demonstrated differentiation-specific compensatory activities during lactation. We also demonstrate that the Wap super-enhancer, which is built on STAT5 and other common transcription factors, retains its exquisite mammary specificity when placed into globally permissive chromatin, suggesting a limited role of chromatin in controlling cell specificity. Our studies unveil a previously unrecognized progressive enhancer landscape where structurally equivalent components serve unique and differentiation-specific functions.
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spelling pubmed-62377362018-11-21 Progressing super-enhancer landscape during mammary differentiation controls tissue-specific gene regulation Lee, Hye Kyung Willi, Michaela Shin, Ha Youn Liu, Chengyu Hennighausen, Lothar Nucleic Acids Res Genomics The mammary luminal lineage relies on the common cytokine-sensing transcription factor STAT5 to establish super-enhancers during pregnancy and initiate a genetic program that activates milk production. As pups grow, the greatly increasing demand for milk requires progressive differentiation of mammary cells with advancing lactation. Here we investigate how persistent hormonal exposure during lactation shapes an evolving enhancer landscape and impacts the biology of mammary cells. Employing ChIP-seq, we uncover a changing transcription factor occupancy at mammary enhancers, suggesting that their activities evolve with advancing differentiation. Using mouse genetics, we demonstrate that the functions of individual enhancers within the Wap super-enhancer evolve as lactation progresses. Most profoundly, a seed enhancer, which is mandatory for the activation of the Wap super-enhancer during pregnancy, is not required during lactation, suggesting compensatory flexibility. Combinatorial deletions of structurally equivalent constituent enhancers demonstrated differentiation-specific compensatory activities during lactation. We also demonstrate that the Wap super-enhancer, which is built on STAT5 and other common transcription factors, retains its exquisite mammary specificity when placed into globally permissive chromatin, suggesting a limited role of chromatin in controlling cell specificity. Our studies unveil a previously unrecognized progressive enhancer landscape where structurally equivalent components serve unique and differentiation-specific functions. Oxford University Press 2018-11-16 2018-10-04 /pmc/articles/PMC6237736/ /pubmed/30285185 http://dx.doi.org/10.1093/nar/gky891 Text en Published by Oxford University Press on behalf of Nucleic Acids Research 2018. This work is written by (a) US Government employee(s) and is in the public domain in the US.
spellingShingle Genomics
Lee, Hye Kyung
Willi, Michaela
Shin, Ha Youn
Liu, Chengyu
Hennighausen, Lothar
Progressing super-enhancer landscape during mammary differentiation controls tissue-specific gene regulation
title Progressing super-enhancer landscape during mammary differentiation controls tissue-specific gene regulation
title_full Progressing super-enhancer landscape during mammary differentiation controls tissue-specific gene regulation
title_fullStr Progressing super-enhancer landscape during mammary differentiation controls tissue-specific gene regulation
title_full_unstemmed Progressing super-enhancer landscape during mammary differentiation controls tissue-specific gene regulation
title_short Progressing super-enhancer landscape during mammary differentiation controls tissue-specific gene regulation
title_sort progressing super-enhancer landscape during mammary differentiation controls tissue-specific gene regulation
topic Genomics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6237736/
https://www.ncbi.nlm.nih.gov/pubmed/30285185
http://dx.doi.org/10.1093/nar/gky891
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